target.cpp 5.1 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197
  1. #include <Arduino.h>
  2. #include "target.h"
  3. T1000eBoard board;
  4. RADIO_CLASS radio = new Module(P_LORA_NSS, P_LORA_DIO_1, P_LORA_RESET, P_LORA_BUSY, SPI);
  5. WRAPPER_CLASS radio_driver(radio, board);
  6. VolatileRTCClock rtc_clock;
  7. MicroNMEALocationProvider nmea = MicroNMEALocationProvider(Serial1);
  8. T1000SensorManager sensors = T1000SensorManager(nmea);
  9. #ifndef LORA_CR
  10. #define LORA_CR 5
  11. #endif
  12. #ifdef RF_SWITCH_TABLE
  13. static const uint32_t rfswitch_dios[Module::RFSWITCH_MAX_PINS] = {
  14. RADIOLIB_LR11X0_DIO5,
  15. RADIOLIB_LR11X0_DIO6,
  16. RADIOLIB_LR11X0_DIO7,
  17. RADIOLIB_LR11X0_DIO8,
  18. RADIOLIB_NC
  19. };
  20. static const Module::RfSwitchMode_t rfswitch_table[] = {
  21. // mode DIO5 DIO6 DIO7 DIO8
  22. { LR11x0::MODE_STBY, {LOW, LOW, LOW, LOW }},
  23. { LR11x0::MODE_RX, {HIGH, LOW, LOW, HIGH }},
  24. { LR11x0::MODE_TX, {HIGH, HIGH, LOW, HIGH }},
  25. { LR11x0::MODE_TX_HP, {LOW, HIGH, LOW, HIGH }},
  26. { LR11x0::MODE_TX_HF, {LOW, LOW, LOW, LOW }},
  27. { LR11x0::MODE_GNSS, {LOW, LOW, HIGH, LOW }},
  28. { LR11x0::MODE_WIFI, {LOW, LOW, LOW, LOW }},
  29. END_OF_MODE_TABLE,
  30. };
  31. #endif
  32. bool radio_init() {
  33. //rtc_clock.begin(Wire);
  34. #ifdef LR11X0_DIO3_TCXO_VOLTAGE
  35. float tcxo = LR11X0_DIO3_TCXO_VOLTAGE;
  36. #else
  37. float tcxo = 1.6f;
  38. #endif
  39. SPI.setPins(P_LORA_MISO, P_LORA_SCLK, P_LORA_MOSI);
  40. SPI.begin();
  41. int status = radio.begin(LORA_FREQ, LORA_BW, LORA_SF, LORA_CR, RADIOLIB_LR11X0_LORA_SYNC_WORD_PRIVATE, LORA_TX_POWER, 8, tcxo);
  42. if (status != RADIOLIB_ERR_NONE) {
  43. Serial.print("ERROR: radio init failed: ");
  44. Serial.println(status);
  45. return false; // fail
  46. }
  47. radio.setCRC(1);
  48. #ifdef RF_SWITCH_TABLE
  49. radio.setRfSwitchTable(rfswitch_dios, rfswitch_table);
  50. #endif
  51. #ifdef RX_BOOSTED_GAIN
  52. radio.setRxBoostedGainMode(RX_BOOSTED_GAIN);
  53. #endif
  54. return true; // success
  55. }
  56. uint32_t radio_get_rng_seed() {
  57. return radio.random(0x7FFFFFFF);
  58. }
  59. void radio_set_params(float freq, float bw, uint8_t sf, uint8_t cr) {
  60. radio.setFrequency(freq);
  61. radio.setSpreadingFactor(sf);
  62. radio.setBandwidth(bw);
  63. radio.setCodingRate(cr);
  64. }
  65. void radio_set_tx_power(uint8_t dbm) {
  66. radio.setOutputPower(dbm);
  67. }
  68. mesh::LocalIdentity radio_new_identity() {
  69. RadioNoiseListener rng(radio);
  70. return mesh::LocalIdentity(&rng); // create new random identity
  71. }
  72. void T1000SensorManager::start_gps() {
  73. gps_active = true;
  74. //_nmea->begin();
  75. // this init sequence should be better
  76. // comes from seeed examples and deals with all gps pins
  77. pinMode(GPS_EN, OUTPUT);
  78. digitalWrite(GPS_EN, HIGH);
  79. delay(10);
  80. pinMode(GPS_VRTC_EN, OUTPUT);
  81. digitalWrite(GPS_VRTC_EN, HIGH);
  82. delay(10);
  83. pinMode(GPS_RESET, OUTPUT);
  84. digitalWrite(GPS_RESET, HIGH);
  85. delay(10);
  86. digitalWrite(GPS_RESET, LOW);
  87. pinMode(GPS_SLEEP_INT, OUTPUT);
  88. digitalWrite(GPS_SLEEP_INT, HIGH);
  89. pinMode(GPS_RTC_INT, OUTPUT);
  90. digitalWrite(GPS_RTC_INT, LOW);
  91. pinMode(GPS_RESETB, INPUT_PULLUP);
  92. }
  93. void T1000SensorManager::sleep_gps() {
  94. gps_active = false;
  95. digitalWrite(GPS_VRTC_EN, HIGH);
  96. digitalWrite(GPS_EN, LOW);
  97. digitalWrite(GPS_RESET, HIGH);
  98. digitalWrite(GPS_SLEEP_INT, HIGH);
  99. digitalWrite(GPS_RTC_INT, LOW);
  100. pinMode(GPS_RESETB, OUTPUT);
  101. digitalWrite(GPS_RESETB, LOW);
  102. //_nmea->stop();
  103. }
  104. void T1000SensorManager::stop_gps() {
  105. gps_active = false;
  106. digitalWrite(GPS_VRTC_EN, LOW);
  107. digitalWrite(GPS_EN, LOW);
  108. digitalWrite(GPS_RESET, HIGH);
  109. digitalWrite(GPS_SLEEP_INT, HIGH);
  110. digitalWrite(GPS_RTC_INT, LOW);
  111. pinMode(GPS_RESETB, OUTPUT);
  112. digitalWrite(GPS_RESETB, LOW);
  113. //_nmea->stop();
  114. }
  115. bool T1000SensorManager::begin() {
  116. // init GPS
  117. Serial1.begin(115200);
  118. // make sure gps pin are off
  119. digitalWrite(GPS_VRTC_EN, LOW);
  120. digitalWrite(GPS_RESET, LOW);
  121. digitalWrite(GPS_SLEEP_INT, LOW);
  122. digitalWrite(GPS_RTC_INT, LOW);
  123. pinMode(GPS_RESETB, OUTPUT);
  124. digitalWrite(GPS_RESETB, LOW);
  125. return true;
  126. }
  127. bool T1000SensorManager::querySensors(uint8_t requester_permissions, CayenneLPP& telemetry) {
  128. if (requester_permissions & TELEM_PERM_LOCATION) { // does requester have permission?
  129. telemetry.addGPS(TELEM_CHANNEL_SELF, node_lat, node_lon, 0.0f);
  130. }
  131. return true;
  132. }
  133. void T1000SensorManager::loop() {
  134. static long next_gps_update = 0;
  135. _nmea->loop();
  136. if (millis() > next_gps_update) {
  137. if (_nmea->isValid()) {
  138. node_lat = ((double)_nmea->getLatitude())/1000000.;
  139. node_lon = ((double)_nmea->getLongitude())/1000000.;
  140. //Serial.printf("lat %f lon %f\r\n", _lat, _lon);
  141. }
  142. next_gps_update = millis() + 1000;
  143. }
  144. }
  145. int T1000SensorManager::getNumSettings() const { return 1; } // just one supported: "gps" (power switch)
  146. const char* T1000SensorManager::getSettingName(int i) const {
  147. return i == 0 ? "gps" : NULL;
  148. }
  149. const char* T1000SensorManager::getSettingValue(int i) const {
  150. if (i == 0) {
  151. return gps_active ? "1" : "0";
  152. }
  153. return NULL;
  154. }
  155. bool T1000SensorManager::setSettingValue(const char* name, const char* value) {
  156. if (strcmp(name, "gps") == 0) {
  157. if (strcmp(value, "0") == 0) {
  158. sleep_gps(); // sleep for faster fix !
  159. } else {
  160. start_gps();
  161. }
  162. return true;
  163. }
  164. return false; // not supported
  165. }